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    • 33. 发明公开
    • Electronically Controlled Beverage Dispenser
    • Elektronisch gesteuerterGetränkespender。
    • EP0644387A1
    • 1995-03-22
    • EP94306908.8
    • 1994-09-21
    • IMI Cornelius Inc.
    • Goulet, Douglas P.Bethuy, Timothy W.
    • F25D21/02F25D31/00
    • F25D31/003F25C2700/04F25D21/02Y10T137/7306
    • An electronic control for the operation of a beverage dispenser of the refrigerated ice bank type (50) is shown. The control provides for reliable determinations of when ice production is needed and when it is not needed. A microprocessor (140) receives information from an ice bank probe (70) and from a temperature probe (72) located within the ice bank (53). Data collected by the microprocessor (140) from both the ice bank probe (70) and the temperature probe (72) is used to determine if the ice bank is either insufficient in size and should be increased or is of sufficient size such that the compressor (61) can be turned off. A carbonator level probe (38) is also shown and connected to the microprocessor (140). The microprocessor is programmed whereby the carbonator probes are sampled in a manner to accurately determine the level of water in the carbonator (10) and therefore the need for turning on or turning off any water pump (59) connected thereto. Both the operation of the compressor (61) and the water pump (59) are controlled by the microprocessor (140) wherein the programming thereof provides for adequate hysteresis protection so that short cycling of the compressor and water pump is avoided.
    • 示出了用于操作冷藏冰库型(50)的饮料分配器的电子控制装置。 该控制提供了当需要制冰以及不需要时可靠地确定。 微处理器(140)从冰块探测器(70)和位于冰块(53)内的温度探测器(72)接收信息。 使用来自冰块探针(70)和温度探测器(72)的微处理器(140)收集的数据来确定冰块的大小是否不足,并且应该增加或具有足够的尺寸,使得压缩机 (61)可以关闭。 还示出了碳酸化器水平探头(38)并连接到微处理器(140)。 对微处理器进行编程,由此碳酸化器探针被采样以便精确地确定碳酸化器(10)中的水位,因此需要接通或关闭与其连接的任何水泵(59)。 压缩机(61)和水泵(59)的操作都由微处理器(140)控制,其中其编程提供足够的滞后保护,从而避免了压缩机和水泵的短暂循环。